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Erosion resistance and scouring depth of fine-grained seabed of the Huanghe River estuary, China

机译:黄河口细粒海底的冲蚀强度和冲刷深度

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Numerical calculation is an effective method to predict the scouring depth of fine-grained sediments. However, as many soil properties affect sediment erodibility, numerically simulated parameters, such as critical erosion stress tau (c) , may result in wrong prediction. To understand the erosion resistance and scouring depth of fine-grained seabed in the Huanghe (Yellow) River estuary, China, the authors calculated the critical erosion stress tau (c) of the bottom sediments using regression equations that correlated physical properties to critical shear stress of silty fine-grained sediment of the research area and predicted the scouring depth of the study area using different available formulae. The results indicate that tau (c) ranges from 0.48 to 1.74 Pa. Comparisons show that the results calculated from the empirical formula proposed by Kandiah are close to the measured data, and choosing the right parameters of sediment in the formula decides the accuracy of the scouring depth calculation. With the Kandiah tau (c) value, the seabed scouring amplitudes in wave action periods of 5, 10, 25 and 50 years were simulated. The calculated results of scouring depth are between 0 and 0.23 m and the corresponding scouring center was predicted to be in the region of depths between 5 and 9 m. Meanwhile, the scouring center was found to be highly correlated with wave breaking and sediment properties.
机译:数值计算是预测细粒沉积物冲刷深度的有效方法。但是,由于许多土壤特性会影响沉积物的侵蚀性,因此,数值模拟的参数(例如临界侵蚀应力tau(c))可能会导致错误的预测。为了了解中国黄河(黄河)河口细粒海底的抗冲蚀性和冲刷深度,作者使用回归方程将物理性质与临界剪应力相关联,计算了底部沉积物的临界冲蚀应力tau(c)。分析研究区粉质细颗粒沉积物,并使用不同的可用公式预测研究区的冲刷深度。结果表明,tau(c)的范围为0.48至1.74 Pa。比较表明,根据康迪亚(Kandiah)提出的经验公式计算得出的结果与实测数据相近,并且在公式中选择合适的沉积物参数决定了精度。冲刷深度计算。利用Kandiah tau(c)值,模拟了5、10、25和50年波浪作用期间的海床冲刷振幅。冲刷深度的计算结果在0到0.23 m之间,并且相应的冲刷中心预计在5到9 m的深度范围内。同时,发现冲刷中心与波浪破碎和沉积物特性高度相关。

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